HSP90
- [1]. Young JC, et al. Hsp90: a specialized but essential protein-folding tool. J Cell Biol. 2001 Jul 23;154(2):267-73. [Content Brief]
- [2]. Karagöz GE, et al. Hsp90 interaction with clients. Trends Biochem Sci. 2015 Feb;40(2):117-25. [Content Brief]
- [3]. Ausili A. Despite their structural similarities, et al. Despite their structural similarities, the cytosolic isoforms of human Hsp90 show different behaviour in thermal unfolding due to their conformation: An FTIR study. Arch Biochem Biophys. 2023 May 15;740:109599. [Content Brief]
- [4]. Assimon VA, et al. Specific Binding of Tetratricopeptide Repeat Proteins to Heat Shock Protein 70 (Hsp70) and Heat Shock Protein 90 (Hsp90) Is Regulated by Affinity and Phosphorylation. Biochemistry. 2015 Dec 8;54(48):7120-31. [Content Brief]
- [5]. Albakova Z. HSP90 multi-functionality in cancer. Front Immunol. 2024 Aug 1;15:1436973. doi: 10.3389/fimmu.2024.1436973. PMID: 39148727; PMCID: PMC11324539. et al. HSP90 multi-functionality in cancer. Front Immunol. 2024 Aug 1;15:1436973. [Content Brief]
- [6]. Rabezanahary H, et al. Live virus neutralizing antibodies against pre and post Omicron strains in food and retail workers in Québec, Canada. Heliyon. 2024 May 21;10(10):e31026. [Content Brief]
- [7]. Chang C, et al. The Distinct Assignments for Hsp90α and Hsp90β: More Than Skin Deep. Cells. 2023 Jan 11;12(2):277. [Content Brief]
- [8]. Sims JD, et al. Extracellular heat shock protein (Hsp)70 and Hsp90α assist in matrix metalloproteinase-2 activation and breast cancer cell migration and invasion. PLoS One. 2011 Apr 14;6(4):e18848. [Content Brief]
- [9]. Donnelly BF, et al. Hsp70 and Hsp90 multichaperone complexes sequentially regulate thiazide-sensitive cotransporter endoplasmic reticulum-associated degradation and biogenesis. J Biol Chem. 2013 May 3;288(18):13124-35. [Content Brief]
- [10]. Chen B, et al. Comparative genomics and evolution of the HSP90 family of genes across all kingdoms of organisms. BMC Genomics. 2006 Jun 17;7:156. [Content Brief]
- [11]. Chaudhury S, et al. The Hsp90β Isoform: An Attractive Target for Drug Development. Med Res Rev. 2025 Sep;45(5):1452-1465. [Content Brief]
- [12]. El-Kasaby A, et al. A cytosolic relay of heat shock proteins HSP70-1A and HSP90β monitors the folding trajectory of the serotonin transporter. J Biol Chem. 2014 Oct 17;289(42):28987-9000. [Content Brief]
- [13]. Morishima Y, et al. The hsp90 cochaperone p23 is the limiting component of the multiprotein hsp90/hsp70-based chaperone system in vivo where it acts to stabilize the client protein: hsp90 complex. J Biol Chem. 2003 Dec 5;278(49):48754-63. [Content Brief]
- [14]. Vogt M, et al. Co-targeting HSP90 alpha and CDK7 overcomes resistance against HSP90 inhibitors in BCR-ABL1+ leukemia cells. Cell Death Dis. 2023 Dec 6;14(12):799. [Content Brief]
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HSP90 Related Products (150)
Related Products (150)
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Antibodies (2)
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PU-20F
0 ImagesCat. No.: HY-121706CAS No.: 422508-29-0PU-20F is a Hsp90 inhibitor with an EC50 of 6.8 μM. PU-20F competes with Geldanamycin (HY-15230) for binding to Hsp90 and regulates the function of this molecular chaperone. PU-20F induces the degradation of oncogenic Her2 tyrosine kinase. PU-20F blocks the growth of breast cancer cells. PU-20F can be used in breast cancer-related research. -
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KUNB106
0 ImagesCat. No.: HY-178956CAS No.: 2393980-27-1KUNB106 is a selective Hsp90β inhibitor with KDs of 91 nM and 38 μM against Hsp90β and Hsp90α. KUNB106 exhibits antiproliferative activity against MDA-MB-231 cells, A549 and SKOV-3 cells. KUNB106 can be used for the study of triple negative breast cancer. -
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- HSP90-IN-33
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Grp94-IN-3
0 ImagesCat. No.: HY-180195Grp94-IN-3 (Compound 47) is a selective ATP competitive inhibitor of Grp94, with a Kd value of 76 nM. Grp94-IN-3 has a much lower affinity for Hsp90α, with a Kd value of 9.17 μM. Grp94-IN-3 induces the degradation of integrin α2 (Integrin α2) in MDA-MB-231 cells and reduces the intracellular accumulation of mutant cardiac proteins in human trabecular meshwork cells. Grp94-IN-3 can be used for the study of metastatic cancer and open-angle glaucoma. -
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- CliMB-325
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HSP90-IN-13
0 ImagesCat. No.: HY-146228CAS No.: 2446055-29-2HSP90-IN-13 (compound 5k) is a highly potent HSP90 pan inhibitor with an IC50 value of 25.07 nM. HSP90-IN-13 has multi-target activity against EGFR, VEGFR-2 and Topoisomerase-2. HSP90-IN-13 causes cell cycle arrest at G2/M phase and induces apoptosis of MCF-7 cells through mitochondrial-mediated pathway. -
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HDAC/HSP90-IN-2
0 ImagesCat. No.: HY-130274CAS No.: 2244714-45-0HDAC/HSP90-IN-2 (compound 26) is a potent dual inhibitor of HDAC (IC50 = 360 nM) and HSP90 (HSP90α IC50 = 77 nM). HDAC/HSP90-IN-2 induces HSP70 expression, downregulates HSP90 client proteins, and promotes acetylation of α-tubulin and histone H3 in cancer cells. HDAC/HSP90-IN-2 reduces PD-L1 expression in IFN-γ treated H1975 cells. HDAC/HSP90-IN-2 can be used for cancer research, such as lung and colon cancer. -
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Tasiamide B
0 ImagesCat. No.: HY-N15154CAS No.: 587014-85-5Tasiamide B is a Cathepsin D inhibitor, which is a linear peptide found in the marine cyanobacteria Symploca sp.. Tasiamide B is proved as a good template for the development of aspartic proteases inhibitors. Tasiamide B is effective against skin cancer by strongly interacting with the target protein HSP90. -
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Diptoindonesin G
0 ImagesCat. No.: HY-125037CAS No.: 1190948-58-3Diptoindonesin G is a 2-arylbenzofuran derivative and a modulator of estrogen receptor and HSP90 middle domain. Diptoindonesin G exhibits strong cytotoxicity against mouse leukemia P-388 cells with an IC50 of 13.2 μM. Diptoindonesin G has antitumor activity and can be used in the research of tumors such as breast cancer. -
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EGFR-IN-182
0 ImagesCat. No.: HY-178955EGFR-IN-182 (Compound 4) is an EGFR inhibitor with an IC50 value of 199 nM. EGFR-IN-182 inhibits HSP90 and PI3K, with IC50 values of 5.007 and 13.596 μM respectively. EGFR-IN-182 exhibits strong anti-proliferative activity against MCF-7 and MDA-MB-231 cells. EGFR-IN-182 downregulates Cyclin D1, inducing cell cycle arrest; it enhances the activity of caspase-9, inducing cell apoptosis. EGFR-IN-182 downregulates the expressions of ERK and AKT. EGFR-IN-182 can be used for research on breast cancer. -
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HSP90-IN-9
0 ImagesCat. No.: HY-145814CAS No.: 2765247-36-5HSP90-IN-9 is a potent and selective HSP90 inhibitor. HSP90-IN-9 displays a fungicidal effect in a dose-dependent manner. HSP90-IN-9 inhibits fungal biofilm formation and fungal morphological changes after being combined with FLC. HSP90-IN-9 recovers FLC resistance by down-regulating the expression of related genes (ERG11, CDR1 and CDR2). -
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Antitumor agent-174
0 ImagesCat. No.: HY-161826Antitumor agent-174 (Compound 10) directly engages the N-terminal site of Hsp90 and promotes the degradation of β-catenin, thereby suppressing the Wnt/β-catenin signaling. Antitumor agent-174 effectively inhibits proliferation, induce S and G2/M phases arrest and block the clonogenic ability in CRC cells. Antitumor agent-174 down-regulates CDK1, Cyclin D1, c-Myc, Cyclin B1, and Cyclin A2, and upregulaties P21 proteins. Antitumor agent-174 has significant anti-tumor efficacy against colorectal cancer (CRC) with excellent pharmacokinetics and low toxicity. -
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MAO A/HSP90-IN-2
0 ImagesCat. No.: HY-155580CAS No.: 2927489-99-2MAO A/HSP90-IN-2 (compound 4-C) is a dual inhibitor of HSP90and MAO A with the IC50 values of 0.016 and 4.58 μM, respectively. MAO A/HSP90-IN-2 increases HSP70 expression and reduces HER2 and phospho-Akt expression, and decreases IFN-γ induced PD-L1 expression in GL26 cells. MAO A/HSP90-IN-2 inhibits the growth of Temozolomide (HY-17364) -sensitive and -resistant GBM cells, colon cancer, leukemia, non-small cell lung and other cancers, and has potential to inhibit tumor immune escape[1] sup >. -
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Hsp90-IN-41
0 ImagesCat. No.: HY-177042CAS No.: 909871-27-8Hsp90-IN-41 (Compound C1) is an inhibitor of Hsp90 (IC50 = 0.044 μM). Hsp90-IN-41 exhibits antifungal and antitumor (IC50 = 0.049 μM) activities in vitro. -
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HDAC/HSP90-IN-3
0 ImagesCat. No.: HY-144694CAS No.: 2700035-54-5HDAC/HSP90-IN-3 (compound J5) is a potent and selective fungal Hsp90 and HDAC dual inhibitor, with IC50 values of 0.83 and 0.91 μM, respectively. HDAC/HSP90-IN-3 shows antifungal activity against azole resistant C. albicans. HDAC/HSP90-IN-3 can suppress important virulence factors and down-regulate drug-resistant genes ERG11 and CDR1. -
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Chaperone complex ligand 1
0 ImagesCat. No.: HY-176951CAS No.: 3048497-50-0Chaperone complex ligand 1 is a chaperone ligand for HSP90. Chaperone complex ligand 1 can be connected to the MET ligand (HY-50878) by a linker to synthesis of MET degrader OZD-MET 01 (HY-177893). -
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Hsp90-IN-44
0 ImagesCat. No.: HY-177875CAS No.: 934346-12-0 -
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17-AEP-GA
0 ImagesCat. No.: HY-133570CAS No.: 75747-23-817-AEP-GA, an HSP90 antagonist, is a potent inhibitor of glioblastoma cell proliferation, survival, migration and invasion. ADCs Toxin. -
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HDAC6/HSP90-IN-1
0 ImagesCat. No.: HY-146293CAS No.: 2411955-43-4HDAC6/HSP90-IN-1 (compound 17) is a potent and selective dual inhibitor of HDAC6 and HSP90, with IC50 values of 4.3 and 46.8 nM, respectively. HDAC6/HSP90-IN-1 down-regulates PD-L1 expression in INF-γ treated H1975 lung cancer cells. HDAC6/HSP90-IN-1 inhibits tumor growth in human H1975 xenograft mice. -
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- HDAC6/HSP90-IN-3
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0 ImagesCat. No.:Synonyms:-
Host:
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Application:
Human,
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Isotype:
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Reactivity:
,
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